paper

Phase segregation in MgZnO probed by optical absorption and photoluminescence at high pressure

arXiv:1709.04668 · doi:10.1063/1.4997745

Abstract

The appearance of segregated wurtzite MgZnO with low Mg content in thin films with affected by phase separation, cannot be reliably probed with crystallographic techniques owing to its embedded nanocrystalline configuration. Here we show a high-pressure approach which exploits the distinctive behaviors under pressure of wurtzite MgZnO thin films with different Mg contents to unveil phase segregation for . By using ambient conditions photoluminescence (PL), and with optical absorption and PL under high pressure for we show that the appearance of a segregated wurtzite phase with a magnesium content of x 0.1 is inherent to the wurtzite and rock-salt phase separation. We also show that the presence of segregated wurtzite phase in oversaturated thin films phase is responsible for the low-energy absorption tail observed above in our MgZnO thin films. Our study has also allowed us to extend the concentration dependence of the pressure coefficient of the band gap from the previous limit of = 0.13 to obtaining d/d = 29 meV/GPa for wurtzite with and 25 meV/GPa for the segregated wurtzite phase.

5 pages, 4 figures

References in corpus (1)